Espinosa Javier, Forchhammer Karl, Burillo Sergio, Contreras Asunción
División de Genética, Universidad de Alicante, Apartado 99, E-03080 Alicante, Spain.
Mol Microbiol. 2006 Jul;61(2):457-69. doi: 10.1111/j.1365-2958.2006.05231.x. Epub 2006 Jun 1.
Cyanobacteria perceive nitrogen status by sensing intracellular 2-oxoglutarate levels. The global nitrogen transcription factor NtcA and the signal transduction protein PII are both involved in 2-oxoglutarate sensing. PII proteins, probably the most conserved signal transduction proteins in nature, are remarkable for their ability to interact with very diverse protein targets in different systems. Despite widespread efforts to understand nitrogen signalling in cyanobacteria, the involvement of PII in the regulation of transcription activation by NtcA remains enigmatic. Here we show that PipX, a protein only present in cyanobacteria, interacts with both PII and NtcA and provides a mechanistic link between these two factors. A variety of in vivo and in vitro approaches were used to study PipX and its interactions with PII and NtcA. 2-Oxoglutarate favours complex formation between PipX and NtcA, but impairs binding to PII, suggesting that partner swapping between these nitrogen regulators is driven by the 2-oxoglutarate concentration. PipX is required for NtcA-dependent transcriptional activation in vivo, thus implying that PipX may function as a prokaryotic transcriptional coactivator.
蓝细菌通过感知细胞内2-酮戊二酸水平来感知氮状态。全局氮转录因子NtcA和信号转导蛋白PII都参与2-酮戊二酸的感知。PII蛋白可能是自然界中最保守的信号转导蛋白,以其在不同系统中与非常多样的蛋白质靶标相互作用的能力而著称。尽管人们广泛努力去理解蓝细菌中的氮信号传导,但PII在NtcA介导的转录激活调控中的作用仍然是个谜。在这里,我们表明PipX是一种仅存在于蓝细菌中的蛋白质,它与PII和NtcA都相互作用,并在这两个因子之间提供了一种机制联系。我们使用了多种体内和体外方法来研究PipX及其与PII和NtcA的相互作用。2-酮戊二酸有利于PipX和NtcA之间形成复合物,但会损害与PII的结合,这表明这些氮调节因子之间的伙伴交换是由2-酮戊二酸浓度驱动的。PipX是体内NtcA依赖性转录激活所必需的,因此意味着PipX可能作为一种原核转录共激活因子发挥作用。